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Modeling pollen-mediated gene flow from glyphosate-resistant to -susceptible giant ragweed (Ambrosia trifida L.) under field conditions

机译:在田间条件下模拟花粉介导的从草甘膦抗性到易感的大型豚草(Ambrosia trifida L.)的基因流

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摘要

A field experiment was conducted to quantify pollen mediated gene flow (PMGF) from glyphosate-resistant (GR) to glyphosate-susceptible (GS) giant ragweed under simulated field conditions using glyphosate resistance as a selective marker. Field experiments were conducted in a concentric design with the GR giant ragweed pollen source planted in the center and GS giant ragweed pollen receptors surrounding the center in eight directional blocks at specified distances (between 0.1 and 35 m in cardinal and ordinal directions; and additional 50 m for ordinal directions). Seeds of GS giant ragweed were harvested from the pollen receptor blocks and a total of 100,938 giant ragweed plants were screened with glyphosate applied at 2,520 g ae ha−1 and 16,813 plants confirmed resistant. The frequency of PMGF was fit to a double exponential decay model selected by information-theoretic criteria. The highest frequency of gene flow (0.43 to 0.60) was observed at ≤0.5 m from the pollen source and reduced rapidly with increasing distances; however, gene flow (0.03 to 0.04) was detected up to 50 m. The correlation between PMGF and wind parameters was inconsistent in magnitude, direction, and years.
机译:使用草甘膦抗性作为选择标记,在模拟田间条件下进行了田间实验,以定量从抗草甘膦(GR)到易受草甘膦(GS)的豚草的花粉介导的基因流(PMGF)。在同心设计中进行了野外实验,在中心种植了GR巨型豚草花粉来源,并在指定距离(基数和序数方向在0.1至35μm之间)和8个定向块周围围绕了中心的GS巨型豚草花粉受体。 m(按顺序)。从花粉受体区中收获了GS巨豚草种子,用2,520 g ae ha -1 施用草甘膦筛选了100,938株巨豚草植物,确定了16813株具有抗性。 PMGF的频率符合信息理论标准选择的双指数衰减模型。在距花粉源≤0.5μm处观察到最高的基因流动频率(0.43至0.60),并随着距离的增加而迅速降低。然而,在50μm的范围内检测到基因流(0.03至0.04)。 PMGF和风参数之间的相关性在大小,方向和年份方面不一致。

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